• Title/Summary/Keyword: Phosphoprotein

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Molecular characterizations of phosphoprotein of rabies virus circulating in Korea

  • Kim, Ha-Hyun;Yang, Dong-Kun;Jeon, Jeong Kuk;Cho, Soo-Dong;Song, Jae-Young
    • Korean Journal of Veterinary Research
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    • v.52 no.1
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    • pp.9-18
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    • 2012
  • Rabies is a major zoonotic disease that causes approximately 55,000 human deaths worldwide on an annual basis. The nucleocapsid protein and glycoprotein genes of the Korean rabies virus (RABV) have been subjected to molecular and phylogenetic analyses. Although the phosphoprotein (P) has several important functions in viral infection and pathogenicity, the genetic characterizations of the P of Korean RABV isolates have not yet been established. In the present study, we conducted genetic analyses of P genes of 24 RABV isolates circulating in the Republic of Korea (hereafter, Korea) from 2008 to 2011. This study revealed that the P genes of Korean RABVs are genetically similar to those of RABV strains of lyssavirus genotype I including V739 (dogs, Korea), NNV-RAB-H (humans, India), NeiMeng925 (raccoon dogs, China), and RU9.RD (raccoon dogs, Russia). Among Korean isolates, the RABV P genes showed low variability in the variable domains among Korean isolates; they had specific consensus sequences and amino acid substitutions capable of identifying geographic characteristics and retained specific sequences thought to be important for viral function. These results provide important genetic characteristics and epidemiological information pertaining to the P gene of the Korean RABV.

Doxorubicin Binds to Un-phosphorylated Form of hNopp140 and Reduces Protein Kinase CK2-Dependent Phosphorylation of hNopp140

  • Kim, Yun-Kyoung;Lee, Won-Kyu;Jin, Young-nam;Lee, Kong-Joo;Jeon, Hye-sung;Yu, Yeon-Gyu
    • BMB Reports
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    • v.39 no.6
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    • pp.774-781
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    • 2006
  • Human nucleolar phosphoprotein p140 (hNopp140) is a nucleolar phosphoprotein that can bind to doxorubicin, an anti-cancer agent. We have examined the interaction between hNopp140 and doxorubicin as well as the folding property of hNopp140. Also, the effects of ATP and phosphorylation on the affinity of hNopp140 to doxorubicin are investigated by affinity dependent co-precipitation and surface plasmon resonance methods. Doxorubicin preferentially binds to un-phosphorylated form of hNopp140 with a $K_D$ value of $3.3\;{\times}\;10^{-7}$ M. Furthermore, doxorubicin reduces the protein kinase CK2-dependent phosphorylation of hNopp140, indicating that doxorubicin may perturb the cellular function of hNopp140 by reducing the protein kinase CK2-dependent phosphorylation of hNopp140. Low contents of the secondary structures of hNopp140 and the fast rate of proteolysis imply that hNopp140 has a high percentage of flexible regions or extended loop structures.

Antiplatelet effects of scoparone through up-regulation of cAMP and cGMP on U46619-induced human platelets

  • Lee, Dong-Ha
    • Journal of Applied Biological Chemistry
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    • v.62 no.4
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    • pp.425-431
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    • 2019
  • Platelet activation is essential for hemostatic process on blood vessel damage. However, excessive platelet activation can cause some cardiovascular diseases including atherosclerosis, thrombosis, and myocardial infarction. Scoparone is commonly encountered in the roots of genus Artemisia or Scopolia, and has been studied for its potential pharmacological properties including immunosuppression and vasorelaxation, but antiplatelet effects of scoparone have not been reported yet. We investigated the effect of scoparone on human platelet activation prompted by an analogue of thromboxane A2, U46619. As the results, scoparone dose-dependently increased cyclic adenosine monophosphate (cAMP) levels as well as cyclic guanosine monophosphate (cGMP) levels, both being aggregation-inhibiting molecules. In addition, scoparone strongly phosphorylated inositol 1, 4, 5-triphosphate receptor (IP3R) and vasodilator-stimulated phosphoprotein (VASP), substrates of cAMP dependent kinase and cGMP dependent kinase. Phosphorylation of IP3R by scoparone resulted in inhibition of Ca2+ mobilization in calcium channels in a dense tubular system, and phosphorylation of VASP by scoparone led to an inability of fibrinogen being able to bind to αIIb/β3. Finally, scoparone inhibited thrombin-induced fibrin clotting, thereby reducing thrombus formation. Therefore, we suggest that scoparone has a strong antiplatelet effect and is highly probable to prevent platelet-derived vascular disease.

Inhibitory effects of isoscopoletin on thrombus formation via regulation of cyclic nucleotides in collagen-induced platelets

  • Lee, Dong-Ha
    • Journal of Applied Biological Chemistry
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    • v.63 no.3
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    • pp.235-241
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    • 2020
  • An essential component of the hemostatic process during vascular damage is platelet activation. However, many cardiovascular diseases, such as atherosclerosis, thrombosis, and myocardial infarction, can develop due to excessive platelet activation. Isoscopoletin, found primarily in plant roots of the genus Artemisia or Scopolia, has been studied to demonstrate potential pharmacological effects on Alzheimer's disease and anticancer, but its mechanisms and role in relation to thrombus formation and platelet aggregation have not yet been discovered. This research investigated the effect of isoscopoletin on collagen-induced human platelet activation. As a result, isoscopoletin strongly increased cyclic adenosine monophosphate (cAMP) and cyclic guanosine monophosphate (cGMP) levels in a concentration-dependent manner. In addition, isoscopoletin greatly phosphorylated inositol 1,4,5-triphosphate receptor (IP3R) and vasodilator-stimulated phosphoprotein (VASP), known substrates of cAMP-dependent kinase and cGMP dependent kinase. Phosphorylation of IP3R by isoscopoletin induced Ca2+ inhibition from the dense tubular system Ca2+ channels, and VASP phosphorylation was involved in fibrinogen binding inhibition by inactivating αIIb/β3 in the platelet membrane. Isoscopoletin finally reduced thrombin-induced fibrin clot production and finally reduced thrombus formation. Therefore, this research suggests that isoscopoletin has strong antiplatelet effects and is likely to be helpful for thrombotic diseases involving platelets by acting as a prophylactic and therapeutic agent.

Purification and Properties of Novel Calcium-binding Proteins from Streptomyces coelicolor

  • Chang, Ji-Hun;Yoon, Soon-Sang;Lhee, Sang-Moon;Park, I-Ha;Jung, Do-Young;Park, Young-Sik;Yim, Jeong-Bin
    • Journal of Microbiology
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    • v.37 no.1
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    • pp.21-26
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    • 1999
  • Two novel calcium-binding proteins, named CAB-I and CAB-II, have been isolated from Streptomyces coelicolor. Purification of the calcium-binding proteins involved heat treatment, fractionation with ammonium sulfate, acid treatment, anion exchange and hydrophobic interaction column chromatography, FPLC gel filtration, and preparative isoelectric focusing. A chelex competitive assay and 45Ca autoradiography verified the calcium-binding ability of the proteins. The major band CAB-II has an apparent molecular weight of 26,000 determined by SDS-polyacrylamide gel electrophoresis and 340,000 determined by gel filtration. The isoelectric point of this molecule showed the acidic nature of the molecule. N-terminal amino acid sequence analysis shows homology to rat Ca2+/calmodulin-dependent protein kinase-II (CAB-II) and yeast phosphoprotein phosphatase (CAB-I).

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A Frameshift Mutation causes Dentinogenesis Imperfecta Type II (상아질 형성부전증 제 II 형의 원인이 되는 Frameshift 돌연변이)

  • Hong, Jiwon;Shin, Teo Jeon;Hyun, Hong-Keun;Kim, Young-Jae;Lee, Sang-Hoon;Kim, Jung-Wook
    • Journal of the korean academy of Pediatric Dentistry
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    • v.44 no.2
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    • pp.164-169
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    • 2017
  • Dentinogenesis imperfecta type II (DGI-II) is an inherited disorder affecting the dentin matrix and is related to mutations in the dentin sialophosphoprotein (DSPP) gene. The protein encoded by the DSPP gene undergoes extensive posttranslational modifications. Dentin phosphoprotein (DPP), one of the DSPP expressed products, has unique composition with highly repetitive Asp-Ser-Ser amino acid residues and is related to the maturation of dentin mineralization. We aimed to identify mutation in DSPP, including the DPP coding region, contributing to inherited dentin defects in a Korean family with DGI-II. Clinical and radiographic examinations were performed, and all five exons and exon-intron boundaries of the DSPP gene were sequenced. Additionally, allele-specific cloning for highly repetitive DPP region was performed. By sequencing and cloning, a heterozygous single nucleotide deletion (c.2688delT) was identified. The identified mutation caused a frameshift in the DPP coding region. This frameshift mutation would introduce hydrophobic amino acids instead of hydrophilic amino acids and would result in a change in the characteristics of DPP.

Phosphorylation of 44-kilodalton Proteins in Peripheral T-lymphocyte of Rat (흰쥐 말초 혈액 림프구의 분자량 44 kD 단백의 인산화)

  • Ahn, Young-Soo;Jou, Il-O;Oh, Do-Yeun;Lim, Seung-Wook;Park, Kyung-Sun
    • The Korean Journal of Pharmacology
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    • v.27 no.2
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    • pp.135-144
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    • 1991
  • Using T-lymphocytes obtained from rat peripheral blood, we found that the 44kD/pI6.8 protein was the major phosphoprotein of T-lymphocytes under basal condition, and that the 44kD/pI6.3 protein was a new phosphoprotein appeared in T-lymphocytes stimulated with ${\beta}-agonist$. The phosphorylation of the 44kD/pI6.3 protein was also induced by forskolin but inhibited by H-8 pretreatment. To clarify the character of the 44kD/pI6.3 protein, we used Con-A and kinase inhibitors, H-7 and W-7. Con-A stimulation induced phosphorylation of 44kD/pI 6.3 protein but that was inhibited by W-7 pretreatment. The phosphorytation of 44kD/pI6.3 protein was not induced by the PKC activator, PMA. Instead, the phosphorylation of 44kD/pI6.8 protein was reduced by H-7, a PKC inhibitor. From the above results,it can be concluded that the 44kD/pI6.3 protein can be a common substrate for A-kinase and CaM kinase. The two dimensional tryptic peptide mapping revealed that the 44kD/pI6.8 and 44kD/pI6.3 proteins are different.

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